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1.
Folia Microbiol (Praha) ; 69(1): 91-99, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38017300

ABSTRACT

Bacillus thuringiensis (Bt) is known for its Cry and Vip3A pesticidal proteins with high selectivity to target pests. Here, we assessed the potential of a novel neotropical Bt strain (UFT038) against six lepidopteran pests, including two Cry-resistant populations of fall armyworm, Spodoptera frugiperda. We also sequenced and analyzed the genome of Bt UFT038 to identify genes involved in insecticidal activities or encoding other virulence factors. In toxicological bioassays, Bt UFT038 killed and inhibited the neonate growth in a concentration-dependent manner. Bt UFT038 and HD-1 were equally toxic against S. cosmioides, S. frugiperda (S_Bt and R_Cry1 + 2Ab populations), Helicoverpa zea, and H. armigera. However, larval growth inhibition results indicated that Bt UFT038 was more toxic than HD-1 to S. cosmioides, while HD-1 was more active against Chrysodeixis includens. The draft genome of Bt UFT038 showed the cry1Aa8, cry1Ac11, cry1Ia44, cry2Aa9, cry2Ab35, and vip3Af5 genes. Besides this, genes encoding the virulence factors (inhA, plcA, piplC, sph, and chi1-2) and toxins (alo, cytK, hlyIII, hblA-D, and nheA-C) were also identified. Collectively, our findings reveal the potential of the Bt UFT038 strain as a source of insecticidal genes against lepidopteran pests, including S. cosmioides and S. frugiperda.


Subject(s)
Bacillus thuringiensis , Insecticides , Moths , Animals , Humans , Infant, Newborn , Bacillus thuringiensis/genetics , Bacillus thuringiensis/metabolism , Glycine max , Endotoxins/metabolism , Bacterial Proteins/genetics , Bacterial Proteins/metabolism , Hemolysin Proteins/genetics , Hemolysin Proteins/metabolism , Hemolysin Proteins/pharmacology , Insecticides/pharmacology , Insecticides/metabolism , Spodoptera/metabolism , Larva , Virulence Factors/metabolism , Pest Control, Biological
2.
Pest Manag Sci ; 78(6): 2502-2511, 2022 Jun.
Article in English | MEDLINE | ID: mdl-35343040

ABSTRACT

BACKGROUND: In soybean fields containing insecticide- and herbicide-resistant genetically engineered varieties, some weed species have increasingly become difficult to manage and may favor the population growth of secondary pests like Spodoptera cosmioides (Walker) (Lepidoptera: Noctuidae). To test this hypothesis, we measured life-history traits, population growth parameters and adult nutrient content of S. cosmioides reared on foliage from four Amaranthus species, from Cry1Ac Bt and non-Bt soybean varieties, and on meridic artificial diet. RESULTS: Larvae reared on A. palmeri and A. spinosus had a shorter development time (5-7 days) than larvae raised on the soybean varieties and A. hybridus. Armyworm survival probability was zero on A. viridis and highest (80% and 71%) on soybeans and A. palmeri. The latter and the artificial diet produced the heaviest larvae and pupae, in contrast to the non-Bt soybean variety. Body nutrient content diverged mostly for adults reared on artificial diet compared with those raised on the soybean varieties. The intrinsic rate of population increase (overall fitness) was 27.88% higher for the armyworms on A. palmeri, Cry1Ac Bt soybean and artificial diet compared with those on non-Bt soybean, A. spinosus and A. hybridus. CONCLUSIONS: Cry1Ac soybean fields infested by some Amaranthus weeds, especially A. palmeri, are conducive to the population growth of S. cosmioides. Integrated pest management programs may be needed to properly manage S. cosmioides in soybean fields, with surveillance for population peaks and judicious control measures when needed. © 2022 Society of Chemical Industry.


Subject(s)
Amaranthus , Fabaceae , Moths , Amaranthus/genetics , Animals , Bacterial Proteins/genetics , Endotoxins , Hemolysin Proteins/genetics , Larva/genetics , Moths/genetics , Plant Weeds , Plants, Genetically Modified/genetics , Glycine max/genetics , Spodoptera/genetics
3.
Sci Rep ; 10(1): 5518, 2020 03 26.
Article in English | MEDLINE | ID: mdl-32218451

ABSTRACT

Bacillus thuringiensis serovar israelensis (Bti) is used to control insect vectors of human and animal diseases. In the present study, the toxicity of four strains of Bti, named T0124, T0131, T0137, and T0139, toward Aedes aegypti and Culex quinquefasciatus larvae was analyzed. The T0131 strain showed the highest larvicidal activity against A. aegypti (LC50 = 0.015 µg/ml) and C. quinquefasciatus larvae (LC50 = 0.035 µg/ml) when compared to the other strains. Furthermore, the genomic sequences of the four strains were obtained and compared. These Bti strains had chromosomes sizes of approximately 5.4 Mb with GC contents of ~35% and 5472-5477 putative coding regions. Three small plasmids (5.4, 6.8, and 7.6 kb) and three large plasmids (127, 235, and 359 kb) were found in the extrachromosomal content of all four strains. The SNP-based phylogeny revealed close relationship among isolates from this study and other Bti isolates, and SNPs analysis of the plasmids 127 kb did not reveal any mutations in δ-endotoxins genes. This newly acquired sequence data for these Bti strains may be useful in the search for novel insecticidal toxins to improve existing ones or develop new strategies for the biological control of important insect vectors of human and animal diseases.


Subject(s)
Aedes/parasitology , Bacillus thuringiensis/classification , Chromosomes, Bacterial/genetics , Culex/parasitology , Genomics/methods , Whole Genome Sequencing/methods , Animals , Bacillus thuringiensis/genetics , Bacillus thuringiensis/immunology , Bacillus thuringiensis Toxins/genetics , Base Composition , Endotoxins/genetics , Genome Size , Hemolysin Proteins/genetics , Larva/parasitology , Mosquito Vectors/parasitology , Phylogeny , Plasmids/genetics , Polymorphism, Single Nucleotide , Serogroup
4.
Article in English | MEDLINE | ID: mdl-30834379

ABSTRACT

Plasmids play a crucial role in the evolution of bacterial genomes by mediating horizontal gene transfer. In this work, we sequenced two plasmids found in a Brazilian Bacillus thuringiensis serovar israelensis strain which showed 100% nucleotide identities with Bacillus thuringiensis serovar kurstaki plasmids.

5.
Sci Rep ; 9(1): 199, 2019 01 17.
Article in English | MEDLINE | ID: mdl-30655612

ABSTRACT

High adoption rates of single-gene Bacillus thuringiensis (Bt) Cry1Ac soybean impose selection pressure for resistance in the soybean looper, Chrysodeixis includens, a major defoliator in soybean and cotton crops. To anticipate and characterize resistance profiles that can evolve, soybean looper larvae collected from field crops in Brazil in 2013 were selected for resistance to Cry1Ac. Using two methods of selection viz., chronic exposure to Cry1Ac cotton leaves and the seven-day larval exposure to purified Cry1Ac on the artificial diet, 31 and 127-fold resistance was obtained in 11 and 6 generations of selection, respectively. The resistance trait had realized heritability of 0.66 and 0.72, respectively, indicating that most of the phenotypic variation in Cry1Ac susceptibility of the soybean looper larvae was due to additive genetic variation. The Cry1Ac-selected populations showed positive cross-resistance to Cry1Ab (6.7-8.7 fold), likely because these Bt toxins have a very similar molecular structure. Importantly, the Cry1Ac-selected populations became more susceptible to Cry2Aa and Cry1Fa, showing negative cross-resistance (up to 6-fold, P < 0.05). These results indicate that Cry1Ac, Cry1Fa, and Cry2A are compatible in a multi-toxin approach to minimize the risk of rapid adaptation of the soybean looper to Bt toxins.


Subject(s)
Bacillus thuringiensis/pathogenicity , Endotoxins/toxicity , Glycine max/genetics , Larva/drug effects , Animals , Bacillus thuringiensis/cytology , Bacillus thuringiensis Toxins , Bacterial Proteins/chemistry , Bacterial Proteins/genetics , Bacterial Proteins/pharmacology , Crops, Agricultural/genetics , Endotoxins/chemistry , Endotoxins/genetics , Endotoxins/pharmacology , Hemolysin Proteins/genetics , Hemolysin Proteins/pharmacology , Insecta/drug effects , Insecticide Resistance/genetics , Molecular Structure , Organisms, Genetically Modified , Plants, Genetically Modified
6.
Sci Rep ; 8(1): 7215, 2018 05 08.
Article in English | MEDLINE | ID: mdl-29740112

ABSTRACT

Although the cultivation of transgenic plants expressing toxins of Bacillus thuringiensis (Bt) represents a successful pest management strategy, the rapid evolution of resistance to Bt plants in several lepidopteran pests has threatened the sustainability of this practice. By exhibiting a favorable safety profile and allowing integration with pest management initiatives, plant essential oils have become relevant pest control alternatives. Here, we assessed the potential of essential oils extracted from a Neotropical plant, Siparuna guianensis Aublet, for improving the control and resistance management of key lepidopteran pests (i.e., Spodoptera frugiperda and Anticarsia gemmatalis). The essential oil exhibited high toxicity against both lepidopteran pest species (including an S. frugiperda strain resistant to Cry1A.105 and Cry2Ab Bt toxins). This high insecticidal activity was associated with necrotic and apoptotic effects revealed by in vitro assays with lepidopteran (but not human) cell lines. Furthermore, deficits in reproduction (e.g., egg-laying deterrence and decreased egg viability), larval development (e.g., feeding inhibition) and locomotion (e.g., individual and grouped larvae walking activities) were recorded for lepidopterans sublethally exposed to the essential oil. Thus, by similarly and efficiently controlling lepidopteran strains susceptible and resistant to Bt toxins, the S. guianensis essential oil represents a promising management tool against key lepidopteran pests.


Subject(s)
Insecticide Resistance/drug effects , Insecticides/pharmacology , Laurales/chemistry , Moths/drug effects , Oils, Volatile/pharmacology , Spodoptera/drug effects , Animals , Bacillus thuringiensis/chemistry , Bacillus thuringiensis Toxins , Bacterial Proteins/isolation & purification , Bacterial Proteins/pharmacology , Cell Line , Endotoxins/isolation & purification , Endotoxins/pharmacology , Hemolysin Proteins/isolation & purification , Hemolysin Proteins/pharmacology , Insecticides/isolation & purification , Larva/drug effects , Larva/physiology , Locomotion/drug effects , Locomotion/physiology , Moths/physiology , Oils, Volatile/isolation & purification , Pest Control, Biological/methods , Spodoptera/physiology , Zygote/drug effects , Zygote/physiology
7.
PLoS One ; 11(5): e0156608, 2016.
Article in English | MEDLINE | ID: mdl-27243977

ABSTRACT

Exposure to Bacillus thuringiensis (Bt) toxins in low- and moderate-dose transgenic crops may induce sublethal effects and increase the rate of Bt resistance evolution, potentially compromising control efficacy against target pests. We tested this hypothesis using the fall armyworm Spodoptera frugiperda, a major polyphagous lepidopteran pest relatively tolerant to Bt notorious for evolving field-relevant resistance to single-gene Bt maize. Late-instar larvae were collected from Bt Cry1Ab and non-Bt maize fields in five locations in Brazil, and their offspring was compared for survival, development, and population growth in rearing environment without and with Cry1Ab throughout larval development. Larval survival on Cry1Ab maize leaves varied from 20 to 80% among the populations. Larvae reared on Cry1Ab maize had seven-day delay in development time in relation to control larvae, and such delay was shorter in offspring of armyworms from Cry1Ab maize. Population growth rates were 50-70% lower for insects continuously exposed to Cry1Ab maize relative to controls, showing the population-level effect of Cry1Ab, which varied among the populations and prior exposure to Cry1Ab maize in the field. In three out of five populations, armyworms derived from Bt maize reared on Cry1Ab maize showed higher larval weight, faster larval development and better reproductive performance than the armyworms derived from non-Bt maize, and one of these populations showed better performance on both Cry1Ab and control diets, indicating no fitness cost of the resistance trait. Altogether, these results indicate that offspring of armyworms that developed on field-grown, single-gene Bt Cry1Ab maize had reduced performance on Cry1Ab maize foliage in two populations studied, but in other three populations, these offspring had better overall performance on the Bt maize foliage than that of the armyworms from non-Bt maize fields, possibly because of Cry1Ab resistance alleles in these populations. Implications of these findings for resistance management of S. frugiperda in Bt crops are discussed.


Subject(s)
Bacterial Proteins/genetics , Bacterial Proteins/pharmacology , Endotoxins/genetics , Endotoxins/pharmacology , Hemolysin Proteins/genetics , Hemolysin Proteins/pharmacology , Insecticides/pharmacology , Pest Control, Biological/methods , Plants, Genetically Modified/genetics , Spodoptera/growth & development , Zea mays/genetics , Animals , Bacillus thuringiensis/pathogenicity , Bacillus thuringiensis Toxins , Crops, Agricultural , Drug Resistance/genetics , Insecticide Resistance , Larva/drug effects , Larva/growth & development , Spodoptera/drug effects
8.
Sci Rep ; 5: 18243, 2015 Dec 17.
Article in English | MEDLINE | ID: mdl-26675246

ABSTRACT

Transgenic crop "pyramids" producing two or more Bacillus thuringiensis (Bt) toxins active against the same pest are used to delay evolution of resistance in insect pest populations. Laboratory and greenhouse experiments were performed with fall armyworm, Spodoptera frugiperda, to characterize resistance to Bt maize producing Cry1A.105 and Cry2Ab and test some assumptions of the "pyramid" resistance management strategy. Selection of a field-derived strain of S. frugiperda already resistant to Cry1F maize with Cry1A.105 + Cry2Ab maize for ten generations produced resistance that allowed the larvae to colonize and complete the life cycle on these Bt maize plants. Greenhouse experiments revealed that the resistance was completely recessive (Dx = 0), incomplete, autosomal, and without maternal effects or cross-resistance to the Vip3Aa20 toxin produced in other Bt maize events. This profile of resistance supports some of the assumptions of the pyramid strategy for resistance management. However, laboratory experiments with purified Bt toxin and plant leaf tissue showed that resistance to Cry1A.105 + Cry2Ab2 maize further increased resistance to Cry1Fa, which indicates that populations of fall armyworm have high potential for developing resistance to some currently available pyramided maize used against this pest, especially where resistance to Cry1Fa was reported in the field.


Subject(s)
Bacterial Proteins/genetics , Disease Resistance/genetics , Endotoxins/genetics , Hemolysin Proteins/genetics , Plant Diseases/genetics , Spodoptera/genetics , Zea mays/genetics , Animals , Animals, Genetically Modified , Bacillus thuringiensis Toxins , Bacterial Proteins/metabolism , Bacterial Proteins/pharmacology , Drug Resistance/genetics , Endotoxins/metabolism , Endotoxins/pharmacology , Female , Genetic Fitness/genetics , Hemolysin Proteins/metabolism , Hemolysin Proteins/pharmacology , Host-Parasite Interactions/genetics , Inheritance Patterns , Male , Plant Diseases/parasitology , Plants, Genetically Modified , Selection, Genetic , Spodoptera/physiology , Zea mays/metabolism , Zea mays/parasitology
9.
Pest Manag Sci ; 70(3): 488-95, 2014 Mar.
Article in English | MEDLINE | ID: mdl-23813721

ABSTRACT

BACKGROUND: Insecticide resistance is probably the major cause of control failure of Plutella xylostella (L.) in Brazil. In most production regions, the use of chemicals has been the prevalent method of control, with reduced efficacy through cropping seasons, even for the most recent use of products based on Bacillus thuringiensis (Bt). The current status of the resistance to these products was assessed, as well as the behavioural response of P. xylostella populations to Bt sprays. RESULTS: Most populations of P. xylostella were resistant to Bt products, particularly to Xentari®WDG (2-54-fold). Differences in walking characteristics of larvae were variable for most populations, for both Dipel®WP and Xentari®WDG, but not associated with resistance. Most females preferred to lay eggs on untreated surfaces and showed a reduced proportion of oviposition on treated surfaces that only correlated with resistance to Dipel®WP (r = -0.74, P = 0.02). CONCLUSION: Broad and indiscriminate use of Bt-based products has selected Brazilian P. xylostella populations to resistance. Larval movement appears to be a resistance-independent mechanism. Most populations of P. xylostella preferred to lay eggs on Bt-free surfaces, which might be a result of growers' practice of spraying the cabbage head. Reduced oviposition on treated surfaces correlated with physiological resistance, suggesting a behavioural response among the Bt-resistant colonies to Dipel®WP.


Subject(s)
Bacillus thuringiensis/physiology , Moths/microbiology , Moths/physiology , Animals , Brassicaceae/parasitology , Brazil , Female , Insecticide Resistance , Insecticides/pharmacology , Larva/drug effects , Larva/growth & development , Larva/microbiology , Larva/physiology , Male , Moths/drug effects , Moths/growth & development , Oviposition , Pest Control, Biological , Plant Diseases/parasitology
10.
Article in English | MEDLINE | ID: mdl-22755540

ABSTRACT

The toxicity of six insecticides was determined for the peach-potato aphid, Myzus persicae (Hemiptera: Aphididae), and some of its natural enemies - the predatory beetles Cycloneda sanguinea (Coccinellidae) and Acanthinus sp. (Anthicidae), and the wasp parasitoid Diaeretiella rapae (Aphidiidae). Natural enemies from these groups are important natural biological control agents in a number of agroecosystems, and insecticides potentially safe to these non-target organisms should be identified using standardized tests. Thus, concentration-mortality bioassays were carried out with both the aphid and its natural enemies to assess the toxicity and selectivity of acephate, deltamethrin, dimethoate, methamidophos, methyl parathion, and pirimicarb. The latter insecticide was highly selective to all natural enemies tested, and its LC(90) for M. persicae was 14-fold lower than the field rate recommended for control of the aphid in brassica crops. Methyl parathion also showed selectivity to C. sanguinea and Acanthinus sp., but not to D. rapae. Acephate was the least potent insecticide against M. persicae and was equally or more toxic to the natural enemies relative to the aphid. Pirimicarb and methyl parathion were efficient against M. persicae and selective in favor of two of the natural enemies tested. Acanthinus sp. and C. sanguinea were more tolerant to the insecticides than was the parasitoid D. rapae. This study shows that there are selective insecticides that may be compatible with conservation of natural enemies in brassica crops, which is important practical information to improve integrated pest management systems in these crops.


Subject(s)
Aphids/drug effects , Insecticides/toxicity , Animals , Carbamates/toxicity , Coleoptera/drug effects , Dimethoate/toxicity , Methyl Parathion/toxicity , Nitriles/toxicity , Organothiophosphorus Compounds/toxicity , Pest Control, Biological , Phosphoramides , Pyrethrins/toxicity , Pyrimidines/toxicity , Wasps/drug effects
11.
J Invertebr Pathol ; 107(3): 185-92, 2011 Jul.
Article in English | MEDLINE | ID: mdl-21550350

ABSTRACT

The cross-resistance spectrum and biochemical mechanism of resistance to the Bacillus thuringiensis Cry1Ab toxin was studied in a field-derived strain of Ostrinia nubilalis (Hübner) (Lepidoptera: Crambidae) that was further selected in the laboratory for high levels (>1000-fold) of resistance to Cry1Ab. The resistant strain exhibited high levels of cross-resistance to Cry1Ac and Cry1Aa but only low levels of cross-resistance (<4-fold) to Cry1F. In addition, there was no significant difference between the levels of resistance to full-length and trypsin-activated Cry1Ab protein. No differences in activity of luminal gut proteases or altered proteolytic processing of the toxin were observed in the resistant strain. Significantly reduced binding of radiolabeled Cry1Aa was observed in the resistant strain whereas binding of Cry1Ab and Cry1Ac was practically the same in both resistant and susceptible strains. The interpretation of the overall data seems to suggest the involvement of an alteration in the binding of Cry1A toxins to a common receptor, which is more clearly revealed by the binding assays using radiolabeled Cry1Aa.


Subject(s)
Bacterial Proteins/toxicity , Drug Resistance/genetics , Endotoxins/toxicity , Hemolysin Proteins/toxicity , Moths/drug effects , Animals , Bacillus thuringiensis Toxins , Bacterial Proteins/metabolism , Biological Assay , Endotoxins/metabolism , Hemolysin Proteins/metabolism , Immunoblotting , Microvilli/metabolism , Moths/genetics
12.
J Invertebr Pathol ; 103(1): 1-7, 2010 Jan.
Article in English | MEDLINE | ID: mdl-19766122

ABSTRACT

The biochemical mechanism of resistance to the Bacillus thuringiensis Cry1F toxin was studied in a laboratory-selected strain of Ostrinia nubilalis (Hübner) (Lepidoptera: Crambidae) showing more than 3000-fold resistance to Cry1F and limited cross resistance to other Cry toxins. Analyses of Cry1F binding to brush border membrane vesicles of midgut epithelia from susceptible and resistant larvae using ligand immunoblotting and Surface Plasmon Resonance (SPR) suggested that reduced binding of Cry1F to insect receptors was not associated with resistance. Additionally, no differences in activity of luminal gut proteases or altered proteolytic processing of the toxin were observed in the resistant strain. Considering these results along with previous evidence of relatively narrow spectrum of cross resistance and monogenic inheritance, the resistance mechanism in this Cry1F selected strain of O. nubilalis appears to be specific and may be distinct from previously identified resistance mechanisms reported in other Lepidoptera.


Subject(s)
Bacterial Proteins/metabolism , Bacterial Toxins/metabolism , Lepidoptera/metabolism , Peptide Hydrolases/metabolism , Animals , Bacillus thuringiensis/isolation & purification , Bacillus thuringiensis/metabolism , Gastrointestinal Tract/enzymology , Larva/metabolism , Larva/microbiology , Lepidoptera/microbiology , Protein Binding
13.
Pest Manag Sci ; 63(7): 699-706, 2007 Jul.
Article in English | MEDLINE | ID: mdl-17523144

ABSTRACT

Efficient chemical control is achieved when insecticides are active against insect pests and safe to natural enemies. In this study, the toxicity of 17 insecticides to the sweetpotato whitefly, Bemisia tabaci (Gennadius), and the selectivity of seven insecticides to natural enemies of this insect pest were evaluated. To determine the insecticide toxicity, B. tabaci adults were exposed to abamectin, acephate, acetamiprid, cartap, imidacloprid, malathion, methamidophos, bifenthrin, cypermethrin, deltamethrin, esfenvalerate, fenitrothion, fenpropathrin, fenthion, phenthoate, permethrin and trichlorphon at 50 and 100% of the field rate (FR), and to water (untreated control). To determine the insecticide selectivity, adults of Encarsia sp., Acanthinus sp., Discodon sp. and Lasiochilus sp. were exposed to abamectin, acephate, acetamiprid, cartap, imidacloprid, malathion and methamidophos at 50 and 100% FR, and to water. Groups of each insect species were exposed to kale leaves preimmersed in each treatment under laboratory conditions. Mortality of exposed individuals was recorded 24 h after treatment. Cartap and imidacloprid at 50 and 100% FR and abamectin and acetamiprid at 100% FR showed insecticidal activity to B. tabaci adults. Abamectin at 50 and 100% FR was the least insecticidal compound to the natural enemies Acanthinus sp., Discodon sp. and Lasiochilus sp. The present results suggest that abamectin at 100% FR may decrease B. tabaci field populations but can still be harmless to predators. Implications of these results within an integrated pest management context are discussed.


Subject(s)
Brassica/parasitology , Food Chain , Hemiptera , Insecticides , Pest Control, Biological , Animals , Coleoptera , Wasps
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